Merge remote-tracking branch 'remotes/armbru/tags/pull-build-2019-07-02-v2' into...
[qemu/ar7.git] / hw / riscv / sifive_clint.c
blob591d70deb3d777a8f62735a2a04e6e893ba68e7f
1 /*
2 * SiFive CLINT (Core Local Interruptor)
4 * Copyright (c) 2016-2017 Sagar Karandikar, sagark@eecs.berkeley.edu
5 * Copyright (c) 2017 SiFive, Inc.
7 * This provides real-time clock, timer and interprocessor interrupts.
9 * This program is free software; you can redistribute it and/or modify it
10 * under the terms and conditions of the GNU General Public License,
11 * version 2 or later, as published by the Free Software Foundation.
13 * This program is distributed in the hope it will be useful, but WITHOUT
14 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
15 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
16 * more details.
18 * You should have received a copy of the GNU General Public License along with
19 * this program. If not, see <http://www.gnu.org/licenses/>.
22 #include "qemu/osdep.h"
23 #include "qemu/error-report.h"
24 #include "qemu/module.h"
25 #include "hw/sysbus.h"
26 #include "target/riscv/cpu.h"
27 #include "hw/riscv/sifive_clint.h"
28 #include "qemu/timer.h"
30 static uint64_t cpu_riscv_read_rtc(void)
32 return muldiv64(qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL),
33 SIFIVE_CLINT_TIMEBASE_FREQ, NANOSECONDS_PER_SECOND);
37 * Called when timecmp is written to update the QEMU timer or immediately
38 * trigger timer interrupt if mtimecmp <= current timer value.
40 static void sifive_clint_write_timecmp(RISCVCPU *cpu, uint64_t value)
42 uint64_t next;
43 uint64_t diff;
45 uint64_t rtc_r = cpu_riscv_read_rtc();
47 cpu->env.timecmp = value;
48 if (cpu->env.timecmp <= rtc_r) {
49 /* if we're setting an MTIMECMP value in the "past",
50 immediately raise the timer interrupt */
51 riscv_cpu_update_mip(cpu, MIP_MTIP, BOOL_TO_MASK(1));
52 return;
55 /* otherwise, set up the future timer interrupt */
56 riscv_cpu_update_mip(cpu, MIP_MTIP, BOOL_TO_MASK(0));
57 diff = cpu->env.timecmp - rtc_r;
58 /* back to ns (note args switched in muldiv64) */
59 next = qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL) +
60 muldiv64(diff, NANOSECONDS_PER_SECOND, SIFIVE_CLINT_TIMEBASE_FREQ);
61 timer_mod(cpu->env.timer, next);
65 * Callback used when the timer set using timer_mod expires.
66 * Should raise the timer interrupt line
68 static void sifive_clint_timer_cb(void *opaque)
70 RISCVCPU *cpu = opaque;
71 riscv_cpu_update_mip(cpu, MIP_MTIP, BOOL_TO_MASK(1));
74 /* CPU wants to read rtc or timecmp register */
75 static uint64_t sifive_clint_read(void *opaque, hwaddr addr, unsigned size)
77 SiFiveCLINTState *clint = opaque;
78 if (addr >= clint->sip_base &&
79 addr < clint->sip_base + (clint->num_harts << 2)) {
80 size_t hartid = (addr - clint->sip_base) >> 2;
81 CPUState *cpu = qemu_get_cpu(hartid);
82 CPURISCVState *env = cpu ? cpu->env_ptr : NULL;
83 if (!env) {
84 error_report("clint: invalid timecmp hartid: %zu", hartid);
85 } else if ((addr & 0x3) == 0) {
86 return (env->mip & MIP_MSIP) > 0;
87 } else {
88 error_report("clint: invalid read: %08x", (uint32_t)addr);
89 return 0;
91 } else if (addr >= clint->timecmp_base &&
92 addr < clint->timecmp_base + (clint->num_harts << 3)) {
93 size_t hartid = (addr - clint->timecmp_base) >> 3;
94 CPUState *cpu = qemu_get_cpu(hartid);
95 CPURISCVState *env = cpu ? cpu->env_ptr : NULL;
96 if (!env) {
97 error_report("clint: invalid timecmp hartid: %zu", hartid);
98 } else if ((addr & 0x7) == 0) {
99 /* timecmp_lo */
100 uint64_t timecmp = env->timecmp;
101 return timecmp & 0xFFFFFFFF;
102 } else if ((addr & 0x7) == 4) {
103 /* timecmp_hi */
104 uint64_t timecmp = env->timecmp;
105 return (timecmp >> 32) & 0xFFFFFFFF;
106 } else {
107 error_report("clint: invalid read: %08x", (uint32_t)addr);
108 return 0;
110 } else if (addr == clint->time_base) {
111 /* time_lo */
112 return cpu_riscv_read_rtc() & 0xFFFFFFFF;
113 } else if (addr == clint->time_base + 4) {
114 /* time_hi */
115 return (cpu_riscv_read_rtc() >> 32) & 0xFFFFFFFF;
118 error_report("clint: invalid read: %08x", (uint32_t)addr);
119 return 0;
122 /* CPU wrote to rtc or timecmp register */
123 static void sifive_clint_write(void *opaque, hwaddr addr, uint64_t value,
124 unsigned size)
126 SiFiveCLINTState *clint = opaque;
128 if (addr >= clint->sip_base &&
129 addr < clint->sip_base + (clint->num_harts << 2)) {
130 size_t hartid = (addr - clint->sip_base) >> 2;
131 CPUState *cpu = qemu_get_cpu(hartid);
132 CPURISCVState *env = cpu ? cpu->env_ptr : NULL;
133 if (!env) {
134 error_report("clint: invalid timecmp hartid: %zu", hartid);
135 } else if ((addr & 0x3) == 0) {
136 riscv_cpu_update_mip(RISCV_CPU(cpu), MIP_MSIP, BOOL_TO_MASK(value));
137 } else {
138 error_report("clint: invalid sip write: %08x", (uint32_t)addr);
140 return;
141 } else if (addr >= clint->timecmp_base &&
142 addr < clint->timecmp_base + (clint->num_harts << 3)) {
143 size_t hartid = (addr - clint->timecmp_base) >> 3;
144 CPUState *cpu = qemu_get_cpu(hartid);
145 CPURISCVState *env = cpu ? cpu->env_ptr : NULL;
146 if (!env) {
147 error_report("clint: invalid timecmp hartid: %zu", hartid);
148 } else if ((addr & 0x7) == 0) {
149 /* timecmp_lo */
150 uint64_t timecmp_hi = env->timecmp >> 32;
151 sifive_clint_write_timecmp(RISCV_CPU(cpu),
152 timecmp_hi << 32 | (value & 0xFFFFFFFF));
153 return;
154 } else if ((addr & 0x7) == 4) {
155 /* timecmp_hi */
156 uint64_t timecmp_lo = env->timecmp;
157 sifive_clint_write_timecmp(RISCV_CPU(cpu),
158 value << 32 | (timecmp_lo & 0xFFFFFFFF));
159 } else {
160 error_report("clint: invalid timecmp write: %08x", (uint32_t)addr);
162 return;
163 } else if (addr == clint->time_base) {
164 /* time_lo */
165 error_report("clint: time_lo write not implemented");
166 return;
167 } else if (addr == clint->time_base + 4) {
168 /* time_hi */
169 error_report("clint: time_hi write not implemented");
170 return;
173 error_report("clint: invalid write: %08x", (uint32_t)addr);
176 static const MemoryRegionOps sifive_clint_ops = {
177 .read = sifive_clint_read,
178 .write = sifive_clint_write,
179 .endianness = DEVICE_LITTLE_ENDIAN,
180 .valid = {
181 .min_access_size = 4,
182 .max_access_size = 4
186 static Property sifive_clint_properties[] = {
187 DEFINE_PROP_UINT32("num-harts", SiFiveCLINTState, num_harts, 0),
188 DEFINE_PROP_UINT32("sip-base", SiFiveCLINTState, sip_base, 0),
189 DEFINE_PROP_UINT32("timecmp-base", SiFiveCLINTState, timecmp_base, 0),
190 DEFINE_PROP_UINT32("time-base", SiFiveCLINTState, time_base, 0),
191 DEFINE_PROP_UINT32("aperture-size", SiFiveCLINTState, aperture_size, 0),
192 DEFINE_PROP_END_OF_LIST(),
195 static void sifive_clint_realize(DeviceState *dev, Error **errp)
197 SiFiveCLINTState *s = SIFIVE_CLINT(dev);
198 memory_region_init_io(&s->mmio, OBJECT(dev), &sifive_clint_ops, s,
199 TYPE_SIFIVE_CLINT, s->aperture_size);
200 sysbus_init_mmio(SYS_BUS_DEVICE(dev), &s->mmio);
203 static void sifive_clint_class_init(ObjectClass *klass, void *data)
205 DeviceClass *dc = DEVICE_CLASS(klass);
206 dc->realize = sifive_clint_realize;
207 dc->props = sifive_clint_properties;
210 static const TypeInfo sifive_clint_info = {
211 .name = TYPE_SIFIVE_CLINT,
212 .parent = TYPE_SYS_BUS_DEVICE,
213 .instance_size = sizeof(SiFiveCLINTState),
214 .class_init = sifive_clint_class_init,
217 static void sifive_clint_register_types(void)
219 type_register_static(&sifive_clint_info);
222 type_init(sifive_clint_register_types)
226 * Create CLINT device.
228 DeviceState *sifive_clint_create(hwaddr addr, hwaddr size, uint32_t num_harts,
229 uint32_t sip_base, uint32_t timecmp_base, uint32_t time_base)
231 int i;
232 for (i = 0; i < num_harts; i++) {
233 CPUState *cpu = qemu_get_cpu(i);
234 CPURISCVState *env = cpu ? cpu->env_ptr : NULL;
235 if (!env) {
236 continue;
238 env->timer = timer_new_ns(QEMU_CLOCK_VIRTUAL,
239 &sifive_clint_timer_cb, cpu);
240 env->timecmp = 0;
243 DeviceState *dev = qdev_create(NULL, TYPE_SIFIVE_CLINT);
244 qdev_prop_set_uint32(dev, "num-harts", num_harts);
245 qdev_prop_set_uint32(dev, "sip-base", sip_base);
246 qdev_prop_set_uint32(dev, "timecmp-base", timecmp_base);
247 qdev_prop_set_uint32(dev, "time-base", time_base);
248 qdev_prop_set_uint32(dev, "aperture-size", size);
249 qdev_init_nofail(dev);
250 sysbus_mmio_map(SYS_BUS_DEVICE(dev), 0, addr);
251 return dev;